Abstract:
A chassis stacker having a first and a second vertical storage rack displaced from one another by a distance wide enough to accommodate a trailer chassis, and connected at a top end by a trolley rail support beam. A trolley is positioned on the trolley rail support beam, said trolley having an elevation system capable of raising and lowering a first and a second stabilizing beam that are suspended from the trolley and guided in their vertical motion by low-friction, storage-rack contact members attached at respective first and second ends of the elevating structure, said contact members in contact with an inner surface of the respective first and second vertical storage racks. A first and a second stabilizing-beam trolley is attached to the, respective, first and second stabilizing beams while a spreader containing a chassis-clamping mechanism extends between and attaches to the first and the second stabilizing beam trolley.
Abstract:
A production line for vehicles of different models is disclosed, wherein vehicle bodies for ordinary automobiles and vehicle bodies for compact automobiles are incorporated on the same production line, and multiple components are installed. Two compact vehicle bodies are carried on a conveyance device which is designed for carrying a single ordinary vehicle body. The number of components of a compact automobile is approximately half the number of components of an ordinary automobile, and therefore compact automobiles can be produced efficiently without any downtime.
Abstract:
In order to provide an electrocoating plant for coating workpieces, in particular vehicle bodies, comprising at least one immersion bath, in which at least one electrode is disposed, a conveying device, which brings the workpieces into the immersion bath and out of the immersion bath again, and a power supply device, which generates from an a.c. input voltage an output voltage, in particular a d.c. output voltage, one output potential of which is applied to at least one of the workpieces to be coated and the other output potential of which is applied to at least one of the electrodes disposed in the immersion bath, which enables an individual output potential to be applied to each workpiece in a simple manner, it is proposed that the power supply device comprise at least one current control unit which moves together with a workpiece associated with the current control unit through at least one section of the electrocoating plant and provides the output potential for the workpiece associated with the current control unit.
Abstract:
An elevator mechanical timing connection free automatic system for immersion processing vehicle bodyworks comprises a plurality of modular processing basins (6) with four lowering devices (13-15) for each basin, operated by independent motors coupled, by pairs, to an electric control system for holding in a timed relationship the raising and lowering movement of pairs of pendulum elements (15), of an independent movement type, thereon a skid-bodywork assembly (1, 5) is loaded.
Abstract:
In order to provide an easy-to-assemble drier (100) for drying surface-treated workpieces, in particular vehicle bodies (110), which are each disposed on a respective workpiece carrier (109), comprising a drier housing (102) having a drier tunnel (108), through which the workpieces are moved along a conveying direction (112) and which is delimited in a downward direction by a drier floor (116) comprising a plurality of floor elements (118), and a conveying device (138) that conveys the workpieces through the drier tunnel (108), it is proposed that the conveying device (138) comprises a plurality of carrying roller units (140), which are disposed successively in the conveying direction (112) and each comprise at least one carrying roller (142), on which the workpiece carriers (109) rest as they are conveyed through the drier tunnel (108), wherein the carrying roller units (140) are each mountable separately on a respective floor element (118) of the drier floor (116).
Abstract:
The integrated conveyor system has a number of independent powered modules (11), each having a pair of rails (2, 3), and powered belt (4) stretched in the transverse space defined between the pair of rails and forming a continuous support and guide structure and along which run a number of trucks are moved by the belt of each module along the rails. The conveyor system also includes a number of modules having no powered belt, a push module (116) having a powered belt and a brake module (11c) having a nonpowered belt; the trucks having stop means for forming, a train of mutually contacting trucks between the push module and the brake module, and pushed by the powered belt of the push module.
Abstract:
In order to provide an electrocoating plant for coating workpieces, in particular vehicle bodies, comprising at least one immersion bath, in which at least one electrode is disposed, a conveying device, which brings the workpieces into the immersion bath and out of the immersion bath again, and a power supply device, which generates from an a.c. input voltage an output voltage, in particular a d.c. output voltage, one output potential of which is applied to at least one of the workpieces to be coated and the other output potential of which is applied to at least one of the electrodes disposed in the immersion bath, which enables an individual output potential to be applied to each workpiece in a simple manner, it is proposed that the power supply device comprise at least one current control unit which moves together with a workpiece associated with the current control unit through at least one section of the electrocoating plant and provides the output potential for the workpiece associated with the current control unit.
Abstract:
In order to provide an easy-to-assemble drier (100) for drying surface-treated workpieces, in particular vehicle bodies (110), which are each disposed on a respective workpiece carrier (109), comprising a drier housing (102) having a drier tunnel (108), through which the workpieces are moved along a conveying direction (112) and which is delimited in a downward direction by a drier floor (116) comprising a plurality of floor elements (118), and a conveying device (138) that conveys the workpieces through the drier tunnel (108), it is proposed that the conveying device (138) comprises a plurality of carrying roller units (140), which are disposed successively in the conveying direction (112) and each comprise at least one carrying roller (142), on which the workpiece carriers (109) rest as they are conveyed through the drier tunnel (108), wherein the carrying roller units (140) are each mountable separately on a respective floor element (118) of the drier floor (116).
Abstract translation:为了提供易于组装的干燥器(100),用于干燥表面处理的工件,特别是各自设置在相应工件载体(109)上的车体(110),包括具有干燥器壳体(102)的干燥器壳体(102) 干燥通道(108),工件沿着输送方向(112)移动,并且通过包括多个地板元件(118)的干燥地板(116)向下方向限定工件,并且输送装置(108) 138),其通过干燥通道(108)输送工件,建议输送装置(138)包括多个输送辊单元(140),其沿输送方向(112)依次布置,并且每个包括在 至少一个承载辊(142),工件载体(109)在它们被输送通过干燥器通道(108)时保持在其上,其中承载辊单元(140)分别安装在相应的地板元件(118)上, d (116)。
Abstract:
The method of conveying elements on a conveyor system of this invention includes conveying an element on a first continuously moving conveyor in a first direction at a first height, then lifting the element from the first conveyor upwardly to a second height and simultaneously moving the element in the first direction, reducing damage to the conveyor and the element. The element may be returned to the first conveyor by lowering the element and simultaneously accelerating the element to generally the velocity of the first conveyor or transferred to a second conveyor at the second height. The conveyor system of this invention includes spaced parallel plastic moving belts and the elements are conveyed on a pallet having a soft metal base. The lift tables include parallelogram lift and lowering linkages.
Abstract:
The invention relates to a device (1) for hardening a coating of an object (4), more particularly a car body, said coating consisting of UV paint or a thermally hardening paint. The inventive device comprises at least one radiator (12) producing an electromagnetic radiation. A conveyor system (3) that moves the object (4) to the proximity of the radiator (12) and moves it away from said radiator includes at least one transport cart (18) that can be translationally moved on at least one running surface (15, 16). Said transport cart (18) has at least one drive motor (22) for the translational movement. A support frame (26) for the object (4) is fixed to the transport cart (18) in order to rotate or pivot the object about an rotational or pivoting axis extending crosswise relative to the translational movement and independently thereof. This makes it possible to also guide objects (4) having a complicated shaped surface, more particularly car bodies, through the at least one radiator (12) so that all areas of the surface can be exposed to approximately the same amount of radiation.